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作 者:陈淑君 单兴刚 王刚强 梁诗钧 吴宇杨 张佳敏 Chen Shujun;Shan Xinggang;Wang Gangqiang;Liang Shijun;Wu Yuyang;Zhang Jiamin(Keyi College of Zhejiang Sci-Tech University,Shaoxing 312369,China)
机构地区:[1]浙江理工大学科技与艺术学院,浙江绍兴312369
出 处:《科学技术创新》2022年第14期34-37,共4页Scientific and Technological Innovation
基 金:2021年度浙江理工大学科技与艺术学院大学生产教融合示范《浙江舜虞检测技术有限公司产教融合示范基地》及大学生国创训练
摘 要:通过将纤维材料与石墨相氮化碳(g-C_(3)N_(4))光催化剂进行浸轧-烘燥处理,成功制备具有可见光响应的光催化纤维材料。以磺胺喹恶啉为有机物污染模型,考察了不同浸轧次数、烘燥温度,溶液pH对光催化效率的影响。结果表明,制得的光催化纤维可在太阳光光照下有效降解磺胺喹恶啉,且在宽谱的pH范围中具有优异的光催化活性。采用两浸两轧,140℃的烘燥温度工艺得到的光催化纤维最佳,在5次循环后对磺胺喹恶啉的去除率仍达97%。本文提出一种简单的粉体催化剂的负载方法,为大面积、大规模的污水治理、空气污染治理等环境治理问题提供了新思路新方法。The photocatalytic fiber materials with visible light response were successfully prepared by dip-rolling-drying treatment of the fiber materials with graphitic carbon nitride(g-C_(3)N_(4))photocatalyst.The effects of different dip-rolling times,drying temperatures and solution pH on the photocatalytic efficiency were investigated using sulfoquinoxaline as the organic contamination model.The results show that the produced photocatalytic fibers can effectively degrade sulfoquinoxaline under sunlight illumination and have excellent photocatalytic activity in a broad spectrum of pH ranges.The photocatalytic fiber obtained by a two-dipping,two-rolling,140°C drying temperature process was optimal,and the removal rate of sulfoquinoxaline was 97%after five cycles.This paper proposes a simple method for loading powder catalysts,which provides new ideas and methods for large-area and large-scale environmental treatment problems such as sewage treatment and air pollution treatment.
关 键 词:石墨相氮化碳 纤维材料 光催化 难降解有机污染物
分 类 号:X703[环境科学与工程—环境工程]
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